[0001] Diving masks are composed of a pair of lenses (or a single lens) supported by a rigid
frame onto whose profile the so-called face mask is fixed, formed by a sort of shroud
of soft and elastically yielding material, equipped with openings for the lenses and
whose rear profile is applied in an airtight way to the face of the diver thanks to
a strap that surrounds the head of the diver.
[0002] However, between the face of the diver and the mask, an internal space remains which
is increased by a cavity projecting to house the nose of the diver.
[0003] Therefore, the eyes and nose of the diver are closed within the mentioned face mask
while his/her mouth remains outside the face mask and can be connected to a cylinder
through a mouthpiece.
[0004] The mask can also be used for free diving.
[0005] In either case, although the nose is not used for breathing, it is inevitable that
a small amount of damp air leaves the diver's nose and this damp air can cause the
lenses to fog up, hence reducing the diver's visual ability.
[0006] Various attempts have been made to reduce the onset of lenses fogging up, mainly
through special treatments of the internal surface of the lenses, the effect of which
is not always long-lasting and satisfactory.
[0007] The technical task of the present invention is to provide a diving mask that prevents
such a drawback by eliminating the cause of the fogging up.
[0008] Within the context of this technical task, an object of the invention is to provide
a diving mask that has anti-fog properties with a simple and cheap construction and
production method.
[0009] The technical task, as well as these and other objects, are achieved according to
the present invention by providing a diving mask comprising a rigid frame, at least
one lens, and a face mask made of soft and elastically yielding material fixed to
said frame, said face mask having a front hollow projection for housing the nose of
the diver and a rear perimeter profile applicable in an airtight way to the face of
the diver so as to delimit an internal space between said mask and the face of the
diver, characterised in that the internal surface of said face mask has at least one
rib that surrounds said front hollow projection for housing the nose, said at least
one rib being configured so as to divide said internal space in an airtight way into
a first zone behind said at least one lens and a second zone including said front
hollow projection for housing the nose.
[0010] Preferably, said rib has an apical end turned back so as to create suitable airtight
contact with the face of the diver.
[0011] Preferably, said rib is made of a single piece with said face mask.
[0012] Preferably said rib extends at least in part along the perimeter edge of said front
hollow projection for housing the nose.
[0013] The present invention therefore provides a diving mask wherein, inside the face mask,
around the cavity projecting to house the nose, a rib is arranged which rests on the
diver's face so as to separate in an airtight way the cavity for housing the nose
from the remaining internal volume of the face mask, behind the eyes of the user.
[0014] In this way, any damp air leaving the diver's nose cannot reach the internal surface
of the lenses fogging them up.
[0015] Further characteristics and advantages will become more apparent from the following
detailed description of an embodiment of the diving mask according to the invention,
illustrated by way of non-limiting example in the accompanying figures, wherein:
figure 1 is the external view of a diving mask of the traditional type;
figure 2 shows the internal side of the same mask of the traditional type;
figure 3 shows the internal side of a mask according to the present invention;
figure 4 is the same as the previous one but shows a horizontal section of the mask
at the cavity designed to house the nose of the diver;
figure 5 is an enlarged partial view of figure 4;
figure 6 is a vertical section according to the plane of symmetry of the mask.
[0016] The traditional mask illustrated in figures 1 and 2 comprises a pair of lenses 10,
which in one variation may be replaced by a single lens, a rigid frame 11 for supporting
the lenses 10, and a face mask 12 made of soft, elastic and yielding material connected
in an airtight way to the frame 11, on one side, and adapted to rest, still in an
airtight way, against the face of the diver, on the other side.
[0017] Such face mask 12 envisages a projecting cavity 13 adapted to house the nose of the
diver.
[0018] A strap 14 fixed to the two lateral ends of the mask through adjustable buckles 15
of the known type and not shown in detail keeps the mask adhering to the face of the
diver.
[0019] When the mask is worn, between its internal surface 16 and the face of the user,
a single internal space is created.
[0020] The small quantities of damp air that can leave the user's nose can therefore be
deposited on the internal surface of the lenses 10, fogging them up.
[0021] Reference is now made to the solution offered by the present invention illustrated
in figures 3 - 6.
[0022] The diving mask 100 comprises a rigid frame 101, a single lens or, as in the illustrated
case, a separate right lens 102 and left lens 103, a face mask 104 made of soft and
elastically yielding material fixed to the frame 101, and a strap (not shown) to keep
the mask 100 on the diver's face.
[0023] The face mask 104 has a rear perimeter profile 105 applicable in an airtight way
to the face of the diver so as to delimit an internal space 113 between the mask 100
and the face of the diver.
[0024] The face mask 104 also has a front hollow projection 112 for housing the nose of
the diver, and at the front for each lens 102, 103 a corresponding positioning opening
106, 107.
[0025] The frame 101 comprises a front element 101a and a rear element 101b superimposed
and mutually connected so as to ensure the airtightness between the face mask 104
and the lenses 102, 103.
[0026] The front element 101a and the rear element 101b of the frame 101 each have a right
annular portion 108a, 108b, a left annular portion 109a, 109b, and a central portion
110a, 110b connecting the right annular portion 108a, 108b and the left annular portion
109a, 109b.
[0027] The right annular portion 108a of the front element 101a and the right annular portion
108b of the rear element 101b of the frame 101 surround and retain the right lens
102, while the left annular portion 109a of the front element 101a and the left annular
portion 109b of the rear element 101b of the frame 101 surround and retain the left
lens 103.
[0028] The central connection portion 110a, 110b is internally lowered with respect to the
right annular portion 108a, 108b and the left annular portion 109a, 109b so as to
leave a suitable distance from the root of the nose.
[0029] Each opening 106, 107 of the face mask 104 has along its perimeter edge a hollow
flange 111, 114 with a transversal section in the form of a polygonal spiral in which
the corresponding annular portion 108b, 109b of the rear element 101b of the frame
101 is engaged.
[0030] Obviously, the scope of the present invention also includes a different airtight
connection system which does not envisage the flange 111, 114.
[0031] Advantageously, the internal surface of the face mask 104 has at least one rib 115
which surrounds the front hollow projection 112 for housing the nose.
[0032] The rib 115 is configured so as to divide in an airtight way the internal space 113
between the mask 100 and the face of the diver, into a first zone 116 behind the lenses
102, 103 and a second zone 117 including the front hollow projection 112 for housing
the nose.
[0033] The rib 115 is advantageously made of a single piece with the face mask 104.
[0034] The rib 115 has a base end 118 for attachment to the rear surface of the face mask
104 and an apical end 119 advantageously turned back, in particular but not necessarily
turned back towards the inside of the second zone 117, so as to create suitable airtight
contact with the diver's face.
[0035] The rib 115 has a constant thickness and a height, meaning the distance between its
base end 118 and its apical end 119, which increases gradually in the direction from
the lower edge to the upper edge of the face mask 104.
[0036] The rib 115 extends at least in part in a laterally staggered position from the frame
101.
[0037] In particular, the rib 115 extends at least in part along the perimeter edge of the
front hollow projection 112 for housing the nose.
[0038] With reference to the illustrated mask 100 having two separate lenses 102, 103 there
is provided a single rib 115 having two converging sections 120, 121 connected by
a transversal section 122.
[0039] More precisely, the two converging sections 120, 121 of the rib 115, with a substantially
flat conformation, extend in a laterally staggered position from the frame 101 along
the perimeter edge of the front hollow projection 112 for housing the hose, while
the transversal section 122 extends to the rear of the frame 101, and in particular
to the rear of the central portion 110a, 110b of the frame 101.
[0040] When the mask 100 is worn, the two converging sections 120, 121 are arranged along
the lateral walls of the nose while the transversal section 122 is arranged around
the root of the nose.
[0041] The first zone 116 of the internal space 113 between the mask 100 and the face of
the diver is formed by a single air chamber that extends continuously from the zone
behind the right lens 102 to the zone behind the left lens 103 passing through the
zone surmounting the transversal section 122 of the rib 115.
[0042] Instead of having a single rib 115, in a solution not shown, it is possible to provide
two or more distinct and separate ribs, for example two ribs that split in an airtight
way the internal space 113 between the mask 100 and the diver's face into a first
zone 116 behind the lenses 102, 103 formed by two air chambers isolated from each
other and a second zone 117 including the front hollow projection 112 for housing
the nose.
[0043] Therefore, according to the invention, when the diver wears the mask 100, the rib
115, resting on the user's face, separates the first zone 116 from the second zone
117 of the internal space 113 between the mask 100 and the face.
[0044] Any emissions of damp air from the diver's nose cannot come into contact with the
rear face of the lens or the lenses and therefore any possibility of fogging up thereof
is prevented.
[0045] The diving mask as conceived herein is susceptible of many modifications and variants,
all falling within the scope of the inventive concept; furthermore, all the details
are replaceable by technically equivalent elements.
1. A diving mask (100) comprising a rigid frame (101), at least one lens (102, 103) and
a face mask (104) made of soft and elastically yielding material fixed to said frame
(101), said face mask (104) having a front hollow projection (112) for housing the
nose of the diver and a rear perimeter profile (105) applicable in an airtight way
to the face of the diver so as to delimit an internal space (113) between said mask
(100) and the face of the diver, characterised that the internal surface of said face
mask (104) has at least one rib (115) that surrounds said front hollow projection
(112) for housing the nose, said at least one rib (115) being configured so as to
divide said internal space (113) in an airtight way into a first zone (116) behind
said at least one lens (102, 103) and a second zone (117) including said front hollow
projection (112) for housing the nose.
2. The diving mask (100) according to the preceding claim, characterised in that said at least one rib (115) has an apical end (119) turned back so as to create suitable
airtight contact with the diver's face.
3. The diving mask (100) according to any one of the preceding claims, characterised in that said at least one rib (115) is made of a single piece with said face mask (104).
4. The diving mask (100) according to any one of the preceding claims, characterised in that said at least one rib (115) extends at least in part in a laterally staggered position
from said frame (101).
5. The diving mask (100) according to any one of the preceding claims, characterised in that said at least one rib (115) extends at least in part along the perimeter edge of
said front hollow projection (112) for housing the nose.
6. The diving mask (100) according to any one of the preceding claims, characterised in that said at least one rib (115) extends upwards with a gradually increasing trend in
the direction from the lower edge to the upper edge of said face mask (104).
7. The diving mask (100) according to any one of the preceding claims, characterised in that said at least one rib (115) has two converging sections (120, 121) connected by a
transversal section (122), said converging sections (120, 121) being configured to
be arranged along the lateral walls of the nose and said transversal section (122)
being configured to be arranged around the root of the nose.
8. The diving mask (100) according to the preceding claim, characterised in that said converging sections (120, 121) of said rib (115) are flat.
9. The diving mask (100) according to claim 8, characterised in that said transversal section (122) of said rib (115) is arched.